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Shot peening plus subsequent short-time annealing - a way to increase the residual stress stability and alternating bending strength of AISI 4140

机译:射击喷丸加上随后的短时退火 - 一种增加AISI 4140的残余应力稳定性和交替弯曲强度的方法

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The positive effects of shot peening are well known: the increase of fatigue strength and life, corrosion fatigue as well as stress corrosion resistance, and the capacity to diminish tensile loading stresses through inducing compressive residual stresses into the surface regions. Varying the shot velocity, mass flow, etc., to improve shot peening effects has also been exhaustedly studied and reported. Because the stability of the compressive residual stresses is of great importance, modifications of the shot peening process have been developed and investigated. The most important are stress peening and peening at elevated temperatures. The latter, so-called warm peening, has led to increases in alternating bending strengths up to 30% compared to conventional shot peening for an AISI 4140. This results from both, static and dynamic strain aging effects, which stabilize the induced dislocation structure and residual stress distribution. In this paper the benefits of static strain aging will be discussed simply by conducting conventional shot peening with a subsequent annealing process. It will be shown that thermal treatment on conventionally shot peened samples can lead to increases of up to 22% in fatigue limit for the investigated AISI 4140. This is accomplished without the technical and financial expenses associated with warm peening. The detrimental effect of thermal residual stress relaxation during the annealing treatment on the fatigue strength was successfully separated from the positive effect of static strain aging. It was succeeded to minimize the thermal residual stress relaxation, which was measured by X-ray diffraction method, while maximizing the static strain aging effects.
机译:令人熟知的射击喷丸的积极影响:疲劳强度和寿命,腐蚀疲劳以及应力耐腐蚀性的增加,以及通过在表面区域诱导压缩残余应力来降低拉伸负荷应力的能力。改变射击速度,质量流量等,以提高喷丸效果也难以研究和报道。因为压缩残余应力的稳定性非常重要,所以已经开发并研究了喷丸过程的修改。最重要的是在升高的温度下喷洒和喷丸。与AISI 4140的常规喷丸喷丸相比,后者使得可变的温暖喷丸使得随着常规喷丸的弯曲和动态菌株效应而导致高达30%的交替弯曲强度增加。这是静态和动态应变老化效应,这稳定了诱导的位错结构和稳定诱导的位错结构残余应力分布。在本文中,通过用随后的退火过程进行常规射击喷丸,将简单地讨论静态应变老化的益处。结果表明,在调查的AISI 4140上,对常规发育的热处理可以导致疲劳极限增加高达22%的疲劳极限。这是在没有与温暖的淘汰相关的技术和财政费用的情况下实现的。热残余应力松弛在退火处理期间对疲劳强度的不利影响,从静应变老化的阳性作用成功分离。成功地最小化了通过X射线衍射方法测量的热残余应力弛豫,同时最大化静态应变老化效果。

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